首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Functional traits reveal the expansion and packing of ecological niche space underlying an elevational diversity gradient in passerine birds
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Functional traits reveal the expansion and packing of ecological niche space underlying an elevational diversity gradient in passerine birds

机译:功能性状揭示了雀形目鸟类海拔高度梯度之下的生态位空间的扩展和堆积

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摘要

Variation in species richness across environmental gradients may be associated with an expanded volume or increased packing of ecological niche space. However, the relative importance of these alternative scenarios remains unknown, largely because standardized information on functional traits and their ecological relevance is lacking for major diversity gradients. Here, we combine data on morphological and ecological traits for 523 species of passerine birds distributed across an Andes-to-Amazon elevation gradient. We show that morphological traits capture substantial variation in species dietary (75%) and foraging niches (60%) when multiple independent trait dimensions are considered. Having established these relationships, we show that the 14-fold increase in species richness towards the lowlands is associated with both an increased volume and density of functional trait space. However, we find that increases in volume contribute little to changes in richness, with most (78%) lowland species occurring within the range of trait space occupied at high elevations. Taken together, our results suggest that high species richness is mainly associated with a denser occupation of functional trait space, implying an increased specialization or overlap of ecological niches, and supporting the view that niche packing is the dominant trend underlying gradients of increasing biodiversity towards the lowland tropics.
机译:跨环境梯度的物种丰富度变化可能与生态位空间的扩大或堆积有关。但是,这些替代方案的相对重要性仍然未知,这主要是因为主要的多样性梯度缺乏有关功能性状及其生态相关性的标准化信息。在这里,我们结合分布在安第斯山脉至亚马逊海拔梯度上的523种雀形目鸟类的形态和生态特征数据。我们显示,当考虑到多个独立的性状维度时,形态性状捕获种类饮食(75%)和觅食生态位(60%)的实质性变化。建立了这些关系后,我们表明,对低地的物种丰富度增加了14倍,与功能性状特征量的增加和密度相关。然而,我们发现体积的增加对丰富度的变化几乎没有贡献,大多数(78%)低地物种发生在高海拔地区所占据的特征空间范围内。综上所述,我们的研究结果表明,物种丰富度高主要与功能性特征空间的密集占用有关,这意味着生态位的专业化程度或重叠性增加,并支持以下观点:生态位堆积是生物多样性向生物多样性增加的梯度的主要趋势。低地热带。

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